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基于三维石墨烯膜中毛细驱动离子溶液流动的发电。

Electricity Generation from Capillary-Driven Ionic Solution Flow in a Three-Dimensional Graphene Membrane.

出版信息

ACS Appl Mater Interfaces. 2019 Feb 6;11(5):4922-4929. doi: 10.1021/acsami.8b16529. Epub 2019 Jan 24.

Abstract

Harvesting energy from the ambient environment provides great promise in the applications of micro/nanodevices and self-powered systems. Herein, we report a novel energy-scavenging method where an ionic solution infiltrating into a three-dimensional graphene (3DG) membrane can spontaneously generate electricity under ambient conditions. A constructed 3DG nanogenerator (3DGNG) with an effective size of 0.5 × 2 cm can produce a continuous voltage of ∼0.28 V and a remarkable output current of ∼62 μA. The voltage is higher than those generated from the interaction between water and carbon nanomaterials in previous research typically in the range of microvolts to millivolts. Moreover, we demonstrate the potential application of the 3DGNG by illuminating a liquid crystal display (LCD) directly with 10 3DGNGs in series. These results present a novel avenue for energy harvesting and show bright potential applications in small devices and self-powered systems.

摘要

从环境中获取能量在微/纳米器件和自供电系统的应用中具有巨大的前景。在此,我们报告了一种新颖的能量收集方法,其中离子溶液渗透到三维石墨烯(3DG)膜中,可以在环境条件下自发发电。一个有效尺寸为 0.5×2cm 的构建的 3DG 纳米发电机(3DGNG)可以产生约 0.28V 的连续电压和显著的 62μA 输出电流。该电压高于之前研究中通常在微伏到毫伏范围内的水和碳纳米材料相互作用产生的电压。此外,我们通过用 10 个串联的 3DGNG 直接照亮液晶显示器(LCD),展示了 3DGNG 的潜在应用。这些结果为能量收集提供了一条新途径,并在小型设备和自供电系统中有很好的应用前景。

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